首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Mechanical properties of controlled memory and superelastic nickel-titanium wires used in the manufacture of rotary endodontic instruments
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Mechanical properties of controlled memory and superelastic nickel-titanium wires used in the manufacture of rotary endodontic instruments

机译:用于制造旋转牙髓器械的受控记忆和超弹性镍钛丝的机械性能

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Introduction: The aim of this study was to investigate the structure and mechanical properties of newly developed controlled memory (CM) nickel-titanium wires used in the manufacture of rotary endodontic instruments. Methods: The composition and the phase transformation behavior of both types of wires were examined by x-ray energy dispersive spectroscopy and differential scanning calorimetry, respectively. Conventional superelastic (SE) nickel-titanium wire was used as a control. The mechanical properties of the wires at selected temperatures (room temperature, 37°C, and 60°C) were evaluated with tensile, cyclic tensile, and cantilever bending tests by using an Instron 3365 universal testing machine. The data of austenitic transformation finishing temperature (A f) were analyzed statistically by using 1-way analysis of variance test at a significance level of P .05. Results: The raw CM wires contained a nickel content of 50.7% ± 0.5% and possessed a relatively higher A f than SE wires (P .05). The critical plateau stress and ultimate tensile strength of the CM wires were lower than they were for the SE wires, but the maximum strain before fracture of the CM wires (58.4% ± 7.5% to 84.7% ± 6.8%) was more than 3 times higher than it was for SE wires (16.7% ± 3.8% to 27.5% ± 5.4%). The maximum strain of the CM wires with a diameter of 1.22 mm tested at room temperature (23°C ± 2°C) was up to 84% ± 6.4%. CM wires were not SE at either room temperature or 37°C; however, they exhibited superelasticity when heated to 60°C. Conclusions: The raw CM wires exhibited different phase transformation behavior and mechanical properties when compared with SE wires, attributing to the special heat treatment history of CM wires. This study suggested greater flexibility of endodontic instruments manufactured with CM wires than similar instruments made of conventional SE wires.
机译:简介:这项研究的目的是研究用于旋转牙髓治疗仪制造的最新开发的可控记忆(CM)镍钛丝的结构和机械性能。方法:分别通过X射线能量色散光谱法和差示扫描量热法检测两种导线的组成和相变行为。常规的超弹性(SE)镍钛丝被用作对照。使用Instron 3365通用测试机,通过拉伸,循环拉伸和悬臂弯曲测试,评估了在选定温度(室温,37°C和60°C)下电线的机械性能。奥氏体转变结束温度(A f)的数据通过使用方差分析的1向分析以P <.05的显着性水平进行统计学分析。结果:未加工的CM线的镍含量为50.7%±0.5%,并且具有比SE线更高的A f(P <.05)。 CM线的临界高原应力和极限抗拉强度低于SE线,但CM线断裂前的最大应变(58.4%±7.5%至84.7%±6.8%)是3倍以上高于SE焊丝(16.7%±3.8%至27.5%±5.4%)。在室温(23°C±2°C)下测试的直径为1.22 mm的CM电线的最大应变高达84%±6.4%。 CM线在室温或37°C时都不是SE。然而,当加热到60℃时,它们表现出超弹性。结论:与SE线相比,原始CM线表现出不同的相变行为和机械性能,这归因于CM线的特殊热处理历史。这项研究表明,用CM钢丝制造的牙髓器械比常规SE钢丝制造的类似器械具有更大的灵活性。

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